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Sensor chips for multiparametric real time monitoring of cell metabolism and drug response

机译:用于多参数实时监测细胞代谢和药物反应的传感器芯片

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Monitoring of metabolic parameters like O_2-consumption and extracellular acidification provides first line information of cell vitality and effects responding to drug addition. For this purpose, a bioelectronic test system based on multiparametric sensor chips has been developed. Cells are directly cultivated on the sensor chips which possess sensors for pH and pO_2 measurement and two IDES-sensors for additional detection of cell impedance changes. A fluidic system supplies the cell culture with fresh medium and enables addition and removal of test substances. Sensors are read out in real-time and data is converted to rates of O_2-consumption and extracellular acidification. Individual cell cultures can be monitored continuously from hours up to weeks. For experiments, the human cell line MCF-7 was treated with different concentrations of cisplatin (5μM and 10μM) and monitored for three days. For comparison, a WST test and cell count was performed in standard cultures every 24 hours. With the sensor chips first drug mediated effects were detected after 15 hours. In contrast to WST assay or CASY cell count with a series of end point measurements, sensor chips allow detection of drug mediated effects online and in real time.
机译:监测O_2消耗和细胞外酸化等代谢参数可提供细胞活力和对药物添加产生反应的作用的一线信息。为此,已经开发了基于多参数传感器芯片的生物电子测试系统。将细胞直接培养在传感器芯片上,该芯片具有用于pH和pO_2测量的传感器以及两个用于进一步检测细胞阻抗变化的IDES传感器。流体系统为细胞培养物提供新鲜的培养基,并能够添加和去除测试物质。实时读取传感器,并将数据转换为O_2消耗率和细胞外酸化率。单个细胞培养物可以从几小时到几周不间断地进行监控。为了进行实验,将人细胞系MCF-7用不同浓度的顺铂(5μM和10μM)处理,并监测三天。为了进行比较,每24小时在标准培养物中进行WST测试和细胞计数。使用传感器芯片,在15小时后首次检测到药物介导的作用。与通过一系列终点测量进行的WST分析或CASY细胞计数相比,传感器芯片可以在线和实时检测药物介导的作用。

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